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Emerging Nanopharmaceuticals and Nanonutraceuticals in Cancer Management

机译:癌症管理中的新兴纳米砧肥和纳米饲料

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摘要

Nanotechnology is the science of nanoscale, which is the scale of nanometers or one billionth of a meter. Nanotechnology encompasses a broad range of technologies, materials, and manufacturing processes that are used to design and/or enhance many products, including medicinal products. This technology has achieved considerable progress in the oncology field in recent years. Most chemotherapeutic agents are not specific to the cancer cells they are intended to treat, and they can harm healthy cells, leading to numerous adverse effects. Due to this non-specific targeting, it is not feasible to administer high doses that may harm healthy cells. Moreover, low doses can cause cancer cells to acquire resistance, thus making them hard to kill. A solution that could potentially enhance drug targeting and delivery lies in understanding the complexity of nanotechnology. Engineering pharmaceutical and natural products into nano-products can enhance the diagnosis and treatment of cancer. Novel nano-formulations such as liposomes, polymeric micelles, dendrimers, quantum dots, nano-suspensions, and gold nanoparticles have been shown to enhance the delivery of drugs. Improved delivery of chemotherapeutic agents targets cancer cells rather than healthy cells, thereby preventing undesirable side effects and decreasing chemotherapeutic drug resistance. Nanotechnology has also revolutionized cancer diagnosis by using nanotechnology-based imaging contrast agents that can specifically target and therefore enhance tumor detection. In addition to the delivery of drugs, nanotechnology can be used to deliver nutraceuticals like phytochemicals that have multiple properties, such as antioxidant activity, that protect cells from oxidative damage and reduce the risk of cancer. There have been multiple advancements and implications for the use of nanotechnology to enhance the delivery of both pharmaceutical and nutraceutical products in cancer prevention, diagnosis, and treatment.
机译:纳米技术是纳米级的科学,这是纳米或十亿分钟的米数。纳米技术包括广泛的技术,材料和制造过程,用于设计和/或增强许多产品,包括药品。该技术近年来肿瘤学领域取得了相当大的进展。大多数化学治疗剂不具体对癌细胞的特异性,它们旨在治疗,它们可以损害健康细胞,导致许多不良影响。由于这种非特异性靶向,施用可能损害健康细胞的高剂量是不可行的。此外,低剂量会导致癌细胞获得抗性,从而使它们难以杀死。可以潜在地增强药物靶向和递送的解决方案在于了解纳米技术的复杂性。工程药物和天然产物进入纳米产品可以增强癌症的诊断和治疗。已显示新型纳米制剂,例如脂质体,聚合物胶束,树枝状大分子,量子点,纳米悬浮液和金纳米颗粒,增强药物的递送。改善化学治疗剂的递送靶向癌细胞,而不是健康的细胞,从而防止不希望的副作用和降低化学治疗性耐药性。纳米技术还通过使用可以特异性靶向的基于纳米技术的成像造影剂彻底改变了癌症诊断,因此增强了肿瘤检测。除了递送药物外,纳米技术还可用于递送培养皿,如植物化学物质,具有多种性质,例如抗氧化剂活性,可保护细胞免受氧化损伤并降低癌症的风险。对于使用纳米技术有多种进步和影响,以增强药物和营养保健品在癌症预防,诊断和治疗中的递送。

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